Bansal V S, Vaidya S
Merck Research Laboratories, Biochemical Regulation Department, Rahway, New Jersey 07065.
Arch Biochem Biophys. 1994 Dec;315(2):393-9. doi: 10.1006/abbi.1994.1516.
We have identified and characterized two novel allyl pyrophosphatase activities from rat liver microsomes. One specifically hydrolyzes farnesyl pyrophosphate (FPP) to farnesol and the other converts geranylgeranyl pyrophosphate (GGPP) to geranylgeranol. Hence, we named them farnesyl pyrophosphatase (FPPase) and geranylgeranyl pyrophosphatase (GGPPase) activities, respectively. Other allyl pyrophosphates, i.e., isopentenyl pyrophosphate, dimethyl allyl pyrophosphate, and geranyl pyrophosphate, did not act as substrates for these activities. Both activities are metal ion independent and exhibit acidic pH optima (5.5 and 6.0). Microsomal FPPase has a Km for FPP of 7 microM and a specific activity of 6.8 nmol/min/mg protein at pH 5.5. GGPP is a potent noncompetitive inhibitor of FPPase. FPP has no inhibitory effect on GGPPase activity. Microsomal GGPPase has a Km for GGPP of 12 microM and a specific activity of 14 nmol/min/mg protein. The Km of FPPase activity for FPP increases with an increase in pH. The GGPPase activity remains unaffected with an increase in pH. Metal ions Zn2+ and Mn2+ are potent inhibitors of GGPPase activity. Zaragozic acid B is a weak inhibitor of FPPase/GGPPase activities as compared to squalene synthase. GGPPase activity is inhibited with a fourfold higher IC50 (20 microM) as compared to FPPase (5 microM). Hence, the FPPase and GGPPase activities can be differentiated by zaragozic acid B inhibition. Kinetic analysis of inhibition of FPPase by zaragozic acid B further indicates that it is a mixed type noncompetitive inhibitor.
我们已从大鼠肝脏微粒体中鉴定并表征了两种新型烯丙基焦磷酸酶活性。一种特异性地将法尼基焦磷酸(FPP)水解为法尼醇,另一种将香叶基香叶基焦磷酸(GGPP)转化为香叶基香叶醇。因此,我们分别将它们命名为法尼基焦磷酸酶(FPPase)和香叶基香叶基焦磷酸酶(GGPPase)活性。其他烯丙基焦磷酸,即异戊烯基焦磷酸、二甲基烯丙基焦磷酸和香叶基焦磷酸,不是这些活性的底物。这两种活性均不依赖金属离子,且在酸性pH值(5.5和6.0)下表现出最佳活性。微粒体FPPase对FPP的Km为7 microM,在pH 5.5时的比活性为6.8 nmol/min/mg蛋白质。GGPP是FPPase的有效非竞争性抑制剂。FPP对GGPPase活性无抑制作用。微粒体GGPPase对GGPP的Km为12 microM,比活性为14 nmol/min/mg蛋白质。FPPase活性对FPP的Km随pH值升高而增加。GGPPase活性不受pH值升高的影响。金属离子Zn2+和Mn2+是GGPPase活性的有效抑制剂。与鲨烯合酶相比,扎戈济酸B是FPPase/GGPPase活性的弱抑制剂。与FPPase(5 microM)相比,GGPPase活性的IC50(20 microM)高四倍,受到抑制。因此,扎戈济酸B抑制可区分FPPase和GGPPase活性。扎戈济酸B对FPPase抑制的动力学分析进一步表明它是一种混合型非竞争性抑制剂。